Trait Overview
TraitBruchid-induced seed damage
Trait CategoryBiotic stress; Plant stress trait
AbbreviationBSD
DefinitionSeed damage caused by bruchid pests such as Callosobruchus maculatus
QTLs[view all 21]
QTLs
Download Table
QTL/MTLLinkage GroupPeakStartStopDatasetMapViewer
qBSD.BC48/TC2210.LG02.17LG0251.8--Black_gram-Bruchid_resistance-Somta-2019View
qBSD.BC48/TC2210.LG06.16LG0611.6--Black_gram-Bruchid_resistance-Somta-2019View
qBSD.BC48/TC2210.LG06.17LG0610.4--Black_gram-Bruchid_resistance-Somta-2019View
qBSD.BC48/TC2210.LG06.17.2LG0623--Black_gram-Bruchid_resistance-Somta-2019View
qBSD.BC48/TC2210.LG06.cbLG0612.8--Black_gram-Bruchid_resistance-Somta-2019View
qBSD.BC48/TC2210.LG06.cb.2LG0623--Black_gram-Bruchid_resistance-Somta-2019View
qBSD.BKB/LYD3.CHr06.1----Bean-Bruchid_resistance-Li-2022-
qBSD.BKB/LYD3.CHr06.2----Bean-Bruchid_resistance-Li-2022-
qBSD.ICPMO056/TN67-F2NB.LG02.1----Bean-bruchid_resistance_moth_bean-Gamage-2022-
qBSD.ICPMO056/TN67-F2NB.LG02.2LG020.6--Bean-bruchid_resistance_moth_bean-Gamage-2022View
qBSD.IPCMO056/TN67.LG02.F2LG0291--Vigna-Bruchid_resistance-Somta-2018View
qBSD.IPCMO056/TN67.LG02.F2:3LG0290--Vigna-Bruchid_resistance-Somta-2018View
qBSD.IPCMO056/TN67.LG02.F2:3.2LG0291--Vigna-Bruchid_resistance-Somta-2018View
qBSD.IPCMO056/TN67.LG02.F2:3.3LG0291--Vigna-Bruchid_resistance-Somta-2018View
qBSD.IPCMO056/TN67.LG05.F2:3LG0517--Vigna-Bruchid_resistance-Somta-2018View
qBSD.KPS2/ACC41.LG02.chiLG0214.8--Vigna-Bruchid_resistance-Kaewwongwal-2019View
qBSD.KPS2/ACC41.LG02.chi.2LG0215.1--Vigna-Bruchid_resistance-Kaewwongwal-2019View
qBSD.KPS2/ACC41.LG02.macLG0214.8--Vigna-Bruchid_resistance-Kaewwongwal-2019View
qBSD.KPS2/ACC41.LG02.mac.2LG0215.1--Vigna-Bruchid_resistance-Kaewwongwal-2019View
GWAS0000324----Cowpea-Bruchid_resistance-Kpoviessi-2022View
GWAS0000325----Cowpea-Bruchid_resistance-Kpoviessi-2022View
YearPublication
2022Li X, Tang Y, Wang L, Chang Y, Wu J, Wang S. QTL mapping and identification of genes associated with the resistance to Acanthoscelides obtectus in cultivated common bean using a high-density genetic linkage map.. BMC plant biology. 2022 May 25; 22(1):260.
2022Kpoviessi AD, Agbahoungba S, Agoyi EE, Badji A, Assogbadjo AE, Chougourou DC, Adoukonou‐Sagbadja H. Application of multi‐locus GWAS for the detection of bruchid resistance loci in cowpea (Vigna unguiculata). Plant breeding. 2022; 141(3):439-450.
2022Rathnayaka S, Kaewwongwal A, Laosatit K, Yimram T, Lin Y, Chen X, Nakazono M, Somta P. Tandemly duplicated genes encoding polygalacturonase inhibitors are associated with bruchid (Callosobruchus chinensis) resistance in moth bean (Vigna aconitifolia).. Plant science : an international journal of experimental plant biology. 2022 Jul 26; 111402.
2019Somta P, Chen J, Yundaeng C, Yuan X, Yimram T, Tomooka N, Chen X. Development of an SNP-based high-density linkage map and QTL analysis for bruchid (Callosobruchus maculatus F.) resistance in black gram (Vigna mungo (L.) Hepper). Scientific reports. 2019 Mar 08; 9(1):3930.
2019Kaewwongwal A, Liu C, Somta P, Chen J, Tian J, Yuan X, Chen X. A second VrPGIP1 allele is associated with bruchid resistance (Callosobruchus spp.) in wild mungbean (Vigna radiata var. sublobata) accession ACC41.. Molecular genetics and genomics : MGG. 2019 Nov 08.
2018Somta P, Jomsangawong A, Yundaeng C, Yuan X, Chen J, Tomooka N, Chen X. Genetic Dissection of Azuki Bean Weevil (Callosobruchus chinensis L.) Resistance in Moth Bean (Vigna aconitifolia [Jaqc.] Maréchal). Genes. 2018 Nov 15; 9(11).